Douglas Zochodne

Personal Information
Title Professor
Expertise Neuropathy & Neurocognition
Institution University of Alberta
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Grants/SubContracts 1
Progress Reports 1
Publications 6
Protocols 0
Committees 1

PTEN knockdown: a novel strategy to reverse diabetic neuropathy
This proposal is aimed at a novel regenerative approach toward diabetic peripheral neuropathy using PTEN inhibition or knockdown. Currently there is no therapy available to reverse neuropathic damage (loss of sensation, neuropathic pain, risk of lower limb ulceration) in diabetic subjects. The Zochodne laboratory has discovered a novel and robust approach toward accelerating the growth of adult peripheral sensory neurons by blocking a regeneration roadblock, PTEN. PTEN (phosphatase and tensin homolog deleted on chromosome ten) is a tumour suppressor molecule that blocks activation of growth programs in cells. It is widely expressed in adult sensory neurons and appears to be upregulated in diabetes. Our laboratory has shown that localized and temporary PTEN inhibition pharmacologically or using nonviral siRNA transfection dramatically increases the growth of adult sensory neurons in vivo and in vitro. Our overall hypothesis is that inhibition or knockdown of PTEN may be associated with reversal of diabetic neuropathy. Our aims in this pilot and feasibility proposal are: 1. To evaluate expression of PTEN and downstream molecules in type 1 and 2 experimental diabetic neuropathy models in mice; 2: To evaluate the impact of PTEN pharmacological or siRNA knockdown on experimental type 1 and 2 diabetic neuropathy in mice. In our laboratory we evaluate experimental neuropathy using electrophysiological, behavioural and morphometric endpoints including epidermal axon density. We propose a rigorous reversal interventional protocol. Temporary and localized PTEN inhibition [nb/only systemic or permanent knockdown theoretically impacts tumorogenesis] is carried out using a pharmacological inhibitor and we have pioneered an exciting nonviral (potentially translatable to humans) siRNA knockdown paradigm.

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 PublicationAltmetricsSubmitted ByPubMed IDStatus

Year: 2018; Items: 1

 
29533535
Published

Year: 2014; Items: 2

 
Regeneration of diabetic axons is enhanced by selective knockdown of the PTEN gene.
Singh B, Singh V, Krishnan A, Koshy K, Martinez JA, Cheng C, Almquist C, Zochodne DW
Brain : a journal of neurology, 2014 (137), 1051 - 1067
24578546
Published
 
Diabetes and the plasticity of sensory neurons.
Zochodne DW
Neuroscience letters, 2014
25445357
Published

Year: 2012; Items: 2

 
Overexpression of human HSP27 protects sensory neurons from diabetes.
Korngut L, Ma CH, Martinez JA, Toth CC, Guo GF, Singh V, Woolf CJ, Zochodne DW
Neurobiology of disease, 2012 (47), 436 - 443
22569359
Published
 
Glucagon-like peptide 1, insulin, sensory neurons, and diabetic neuropathy.
Kan M, Guo G, Singh B, Singh V, Zochodne DW
Journal of neuropathology and experimental neurology, 2012 (71), 494 - 510
22588388
Published

Year: 2011; Items: 1

 
Local insulin and the rapid regrowth of diabetic epidermal axons.
Guo G, Kan M, Martinez JA, Zochodne DW
Neurobiology of disease, 2011 (43), 414 - 421
21530660
Published
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No protocols found.
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